Ren Jiamu, Guo Xinwei
Yanbian University, Jilin, 133002, China.
Peking University, Haidian District, Beijing, 100871, China.
Heliyon. 2023 Aug 22;9(9):e19078. doi: 10.1016/j.heliyon.2023.e19078. eCollection 2023 Sep.
In recent years, dental resin materials have become increasingly popular for cavity filling. However, these materials can shrink during polymerization, leading to microleakages that enable bacteria to erode tooth tissue and cause secondary caries. As a result, there is great clinical demand for the development of antibacterial resins. The principle of antibacterial resin includes contact killing and filler-release killing of bacteria. For contact killing, quaternary ammonium salts (QACs) and antibacterial peptides (AMPs) can be added. For filler-release killing, chlorhexidine (CHX) and nanoparticles are used. These antibacterial agents are effective against gram-positive bacteria, gram-negative bacteria, fungi, and more. Among them, QACs has a lasting antibacterial effect, and silver nanoparticles even have a certain ability to kill viruses. Biocompatibility-wise, QACs, AMPs, and CHX have low cytotoxicity to cells when added into the resin. However, nanoparticles with smaller particle sizes have higher cytotoxicity. In terms of mechanical properties, QACs, AMPs, and CHX do not negatively affect the resin. However, the addition of magnesium oxide can have a negative impact. This paper reviews the types and antibacterial principles of commonly used antibacterial resins in recent years, evaluates their antibacterial effect, biological safety, and mechanical properties, and provides references for selecting clinical filling materials.
近年来,牙科树脂材料在龋洞充填中越来越受欢迎。然而,这些材料在聚合过程中会收缩,导致微渗漏,使细菌能够侵蚀牙齿组织并引发继发龋。因此,临床上对抗菌树脂的开发有很大需求。抗菌树脂的原理包括对细菌的接触杀灭和填料释放杀灭。对于接触杀灭,可以添加季铵盐(QACs)和抗菌肽(AMPs)。对于填料释放杀灭,则使用洗必泰(CHX)和纳米颗粒。这些抗菌剂对革兰氏阳性菌、革兰氏阴性菌、真菌等都有效。其中,QACs具有持久的抗菌效果,银纳米颗粒甚至具有一定的杀病毒能力。在生物相容性方面,QACs、AMPs和CHX添加到树脂中时对细胞的细胞毒性较低。然而,粒径较小的纳米颗粒具有较高的细胞毒性。在机械性能方面,QACs、AMPs和CHX不会对树脂产生负面影响。然而,添加氧化镁可能会有负面影响。本文综述了近年来常用抗菌树脂的类型和抗菌原理,评估了它们的抗菌效果、生物安全性和机械性能,为临床充填材料的选择提供参考。